ICP
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Quartz ICP® Force Rings
Ring-style sensor configurations measure dynamic compression. Tension measurements are also possible if the unit has been installed with proper pre-load. The through-hole mounting supports platform, integrated link, and support style installations using either a through-bolt or the supplied stud.
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ICP Microphone System
378C10
This model includes a 1/4" microphone cartridge, a mated preamplifier with TEDS, and system calibration.
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PCB High Sensitivity, 100mV/g, ICP® (IEPE) Accelerometer
780989-01
The PCB HSTC33 helps you acquire sound and movement data with supported PXI Sound and Vibration Modules, C Series Sound and Vibration Input Modules, and USB-based Sound and Vibration Devices. This sensor uses the Integrated Electronics Piezo-Electric (IEPE) current excitation. The PCB HSTC33 features a sensitivity range of 100 mV/g and requires a low-noise coaxial cable.
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On-line ICP / ICP-MS Sample Preparation System
SDX ʜᴘʟᴅ
The SDXHPLD system combines the proven ASX‑560 autosampler with a novel vortex mixing dilution accessory. The system dilutes in the same way you do by hand: volume-to-volume dilution, using a highly accurate syringe pump. But it also goes an additional step to vortex mix the resulting dilution prior to sample introduction to ICP and ICP-MS.The SDX employs vortex mixing to promote homogenization of a sample to ensure accurate and precise analysis following dilution. The variety of sample matrices submitted for trace element analysis necessitates the need for mixing. This long overdue capability improves data quality by fully homogenizing a dilution mixture rather than performing in-line combination.The SDXHPLD is a straight-forward, fully-integrated solution for automated dilution of aqueous and acid base sample prep for ICP or ICP-MS.
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Inductively Coupled Plasma Spectroscopy (ICP-OES/MS), ICP Analysis Services
ICP-OES measures the light emitted at element-specific characteristic wavelengths from thermally excited analyte ions . This light emitted is separated and measured in a spectrometer, yielding an intensity measurement that can be converted to an elemental concentration by comparison with calibration standards. ICP-MS (ICP-Mass Spec) measures the masses of the element ions generated by the high temperature argon plasma. The ions created in the plasma are separated by their mass to charge ratios, enabling the identifcation and quantitation of unknown materials. ICP-MS offers extremely high sensitivity (i.e. low detection limits) for a wide range of elements
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ICP® Shock Accelerometers
Piezoelectric ICP® accelerometers afford a very high signal output (+/- 5 volts full scale) and the ease of two-wire electrical connectivity. Their inherent ruggedness enables them to be severely over ranged without damage. The addition of internal mechanical isolation minimizes the high frequency stress that would otherwise be encountered by their ceramic sensing elements. This mechanical isolation, coupled with an internal 2-pole electrical filter, built into the ICP® circuitry, tailors the overall accelerometer response to assure data quality to frequencies as high as 10 kHz. Depending on the specific model, accelerations in excess of 50 kg can be successfully measured. These modern designs, with their internal elastomeric isolation materials are verified through calibration to remain dynamically linear and are enabling piezoelectric accelerometers to operate in increasingly severe acceleration environments.
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PCB Triaxial Accelerometer, 1000mV/g, ICP®(IEPE), 0.5Hz-3kHz
784815-01
The PCB Miniature Triaxial Accelerometer helps you acquire sound and movement data with supported PXI Sound and Vibration Modules, C Series Sound and Vibration Input Modules, and USB-based Sound and Vibration Devices. This sensor uses the Integrated Electronics Piezo-Electric (IEPE) current excitation. The PCB Miniature Triaxial Accelerometer features a sensitivity range of 1000 mV/g and requires the PCB lightweight cable with 4-socket plugs.
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In-line ICP® Charge Converters
In-line ICP® charge converters play a vital role in converting high impedance charge mode piezoelectric sensor signals into low impedance voltage signals, facilitating input to readout, recording, and analysis instruments. Specifically engineered for compatibility with high temperature piezoelectric sensors, these units are capable of operation in environments reaching up to 500°F (260°C). The series boasts ±2.5V or ±5.0 V output, offering a range of gain options, all packaged within a compact and durable casing. As a cost-effective alternative to laboratory charge amplifiers, in-line ICP® charge converters present an appealing choice for multi-channel applications.
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PCB High Sensitivity, 100mV/g, ICP® (IEPE) Accelerometer
784170-01
The PCB HSTA15 helps you acquire sound and movement data with supported PXI Sound and Vibration Modules, C Series Sound and Vibration Input Modules, and USB-based Sound and Vibration Devices. This sensor uses the Integrated Electronics Piezo-Electric (IEPE) current excitation. The PCB HSTA15 features a sensitivity range of 10 mV/g and requires a 4-socket plug-to-3 BNC plug cable.
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Cryogenic ICP® Accelerometers
Cryogenic ICP® accelerometers are specifically designed to operate at temperatures below the typical -65 ºF (-54 ºC) temperature limit of most voltage mode sensors. The use of specialized, built-in, cryogenic circuitry and quartz shear sensing technology promote survivability in demanding environments such as liquid nitrogen. Each sensor is hermetically sealed and individually tested to determine the thermal coefficient of sensitivity at -320 ºF (-196 ºC) ensuring reliable operation and accurate measurements. These sensors have been successfully used in the presence of liquid helium during structural testing of rocket boosters.
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Ground Isolated ICP® Pressure Sensors For High Frequency
PCB® Series 102B is a ground isolated version of the Series 113B. These sensors have all of the same features and benefits of the 113B Series, plus the added benefit of isolation, which helps prevent ground loop problems. This series can accommodate an optional ablative coating (Prefix: CA) to protect the diaphragm from thermal shock in flash-temperature applications.
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Quartz ICP® Links
Link-style sensors measure dynamic compression and tension. They are constructed using a force ring that is under compressive pre-load between threaded mounting hardware. The threaded mounting on both ends of the sensor supports integrated link-style installations. Versions offering full-scale measurements of 10 lb to 50k lb (45 N to 220k N) compression and 30k lb (130k N) tension are available.
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ICP Microphone System
378C01
This model includes a 1/4" microphone cartridge, a mated preamplifier with TEDS, and system calibration. Click the following for individual component information.
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High Temperature
PCB® offers specially designed and tested ICP® and charge mode accelerometers for testing in extremely high temperatures.
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High Temperature Charge Mode Accelerometers
Charge mode output accelerometers from PCB® use piezo-ceramic sensing elements that output an electrostatic charge signal proportional to the applied acceleration. These sensors can operate at extremely high temperatures because they do not contain the built-in signal conditioning electronics that limit the temperature range of ICP® accelerometers. Charge mode sensors are used in the testing of gas and steam turbines, jet engines, high power motors, exhaust systems and automobile engines where temperatures can range from 500° F (260° C) to 1200° F (649° C).
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IEPE Monoaxial Accelerometer – 100 mV/g
HDP352C34
Monoaxial accelerometer general purpose, ICP, 100mV/g, weight 5,8 g, range 50 g pk
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High Temperature ICP® Accelerometers
PCB® offers specially designed and tested ICP® accelerometers for conducting vibration and shock measurements under demanding environmental conditions of up to 356 °F (180 °C). These sensors combine proven quartz and ceramic shear sensing technology with specialized, built-in microelectronic signal conditioning circuitry to achieve dependable operation in extreme temperatures and through repetitive temperature cycling. Laser-welded, hermetically sealed, lightweight titanium or stainless steel housings offer further protection from the environment. Prior to shipment, each sensor undergoes a battery of tests to ensure survivability for its intended use. Such tests include temperature soak at elevated temperatures, temperature cycling, and exposure to highly accelerated screening procedures with hydraulically actuated shakers.
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ICP Plasma System
The AXIC IsoLok® Inductively Coupled Plasma (ICP) Load-Locked Processing System from AXIC, Inc. defines a new concept in Deep Reactive Ion Etch (DRIE) and low temperature-low damage Plasma Enhanced Chemical Vapor Deposition (ICP-PECVD) plasma processing. The system is based on a modular design starting with a universal chamber and cabinet unit with ICP etch or deposition bottom electrodes available for easy installation into the chamber unit combined with a load-lock. We are confident you will find the ease of use, variety of plasma processes, serviceability and attractive pricing unsurpassed by any other plasma product in the market.
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Atomic Absorption Systems
Agilent leads the industry with innovative atomic absorption (AA) instruments. The entry-level SpectrAA 55B is ideal for labs in remote locations, while the 240FS and 280FS AA systems achieve the productivity of sequential ICP with Agilent’s Fast Sequential technology. The 240Z and 280Z AA systems provide superior performance and accurate background correction with transverse Zeeman technology. Our AA Duo systems feature unique simultaneous operation of both the flame and graphite furnace.
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ICP-MS spectrometers (ICP MASS)
SPECTRO Analytical Instruments GmbH
SPECTRO MS is a double-focusing sector field ICP MS (ICP mass spectrometer) based on a Mattauch-Herzog geometry with a newly developed ion optic and pioneering detector technology. It is the only ICP MS instrument available on the market today that is capable of simultaneously measuring the complete mass range used for inorganic mass spectrometry from 6Li to 238U with a permanent ion beam going to the detector.
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Desolvating Nebulizer
Aridus3
The CETAC Aridus3 Desolvating Nebulizer System is a specialized liquid sample introduction accessory for inductively coupled plasma mass spectrometry (ICP‑MS). The Aridus3 can enhance analyte sensitivity up to 10 times or more and can greatly reduce solvent-based interferences such as oxides and hydrides.The Aridus3 couples a low-flow (50, 100, or 200 µL/min) PFA nebulizer and a heated PFA spray chamber with an inert fluoropolymer membrane. This combination provides enhanced analyte sensitivity while reducing solvent based interferences such as oxides and hydrides. The Aridus3 is particularly advantageous for small volume and highly corrosive samples such as those generated in the earth sciences and the semiconductor industry.
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Piezoresistive MEMS Shock Accelerometers
Piezoresistive shock accelerometers, manufactured by MEMS technology, have low power consumption while still providing +/- 200 mV full scale output. They afford a wider operating temperature range when compared to mechanically isolated ICP® accelerometers. Their frequency response ranges from DC (0 Hz) to 20 kHz. To lessen the severity of response when their resonant frequency is excited, they incorporate squeeze film damping, achieving values of 0.02 to 0.06 of critical.
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Digital USB Sensor Interface AC,DC, IEPE
ROGADAQ2
The RogaDAQ2 USB DAQ is developed for highly accurate measurements in the T&M and also for NVH measurements. This USB Front End is optimized for noise and vibration measurements with 2 channel IEPE (ICP®) sensor supply.
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IEPE Triaxial Accelerometer – 1000 mV/g
HDP356B18
Triaxial accelerometer high sensitivity, ICP, 1V/g, weight 25g, range 5 g pk
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Atomic Spectroscopy Software
The range of Agilent atomic spectroscopy software, available with and without compliance solutions, includes SpectrAA, MP Expert, ICP Expert and ICP-MS MassHunter software.
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Data Acquisition Card
TPCE
The Elsys TPCE data acquisition (DAQ) cards are high-precision and high-resolution digitizers with sophisticated features such as advanced trigger mode, continuous data acquisition mode, differential inputs, digital input lines (Markers) and ICP coupling for powering piezo sensors.
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Atomic Spectroscopy
Agilent’s comprehensive atomic spectroscopy software portfolio leads the industry in the simple setup and productivity tools required by routine analytical laboratories, while also providing the flexibility needed for advanced method development in research and academia. Our advanced ICP-MS software, including the powerful ChemStation and MassHunter systems, are used in all of our mass-spec platforms, so you can benefit from a single solution and reduce staff training requirements. Our cutting edge ICP software also enables intuitive control in ICP-MS processes.
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ICP® Accelerometers With Excellent Thermal Stability
The single and triaxial ICP® accelerometers are designed with a low temperature coefficient, wide operating temperature range, and good broadband measurement resolution, making them ideal for any vibration measurement requiring tight control of amplitude sensitivity over a wide thermal gradient. To alleviate the effects of high frequency overloads caused by metal-to-metal inputs, a low pass filter has been incorporated in all models, ensuring accurate data in the frequency range of interest.
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16 Channel USB Sensor Interface
RogaDAQ16
With the introduction of the RogaDAQ16 USB 2.0 data acquisition system, a new age of measurement technology begins.*USB 2.0 / 480MBIT (USB1.1/12MBIT COMPATIBLE)*16 analog input channels (16bit/500kHz max.)*ICP ® ( IEPE ) sensor supply (24V/4mA)*0.125V to 10V input range*Individual preamplifiers*4 analog output channels (16bit/100kHz)*Powerful DSP (255MIPS) for filtering, control etc.*24 digital I/Os*Optional 24bit counter, timer, PWM, incremental encoder*Free drivers for major application software*including DASYLab; LabView & DiaDem drivers & RogaRec Software




























